Schmied Annie, Aimonetti Jean-Marc, Vedel Jean-Pierre
DPM-CNRS 31 chemin Joseph Aiguier, Marseille, France.
Adv Exp Med Biol. 2002;508:179-85. doi: 10.1007/978-1-4615-0713-0_21.
The task related changes in the Gp I inputs were investigated in type-identified motor units in the wrist extensor muscles. During wrist extension, the monosynaptic inputs generated by applying radial nerve stimulation were distributed among the motoneurone pool in line with the size principle. Their effectiveness was enhanced in the same way during hand clenching and during wrist extension combined with stimulation of the palm and finger cutaneous receptors. The orderly distribution of the monosynaptic Gp I inputs was reversed by the presynaptic inhibition induced by stimulating the Gp I flexor afferents. The effects of the presynaptic inhibition were partially released by applying cutaneous stimulation. During wrist extension, the Gp I flexor afferents generated disynaptic excitatory inputs acting specifically on high-threshold motor units together with disynaptic inhibitory inputs distributed in line with the size principle among the wrist extensor motor nucleus. During hand lenching, their effectiveness was differentially modulated depending on the motor unit type.
在腕伸肌中已明确类型的运动单位中,研究了与任务相关的Gp I输入变化。在腕伸展过程中,通过施加桡神经刺激产生的单突触输入根据大小原则分布于运动神经元池之间。在手部紧握期间以及腕伸展与手掌和手指皮肤感受器刺激相结合时,它们的有效性以相同方式增强。刺激Gp I屈肌传入纤维所诱导的突触前抑制可逆转单突触Gp I输入的有序分布。施加皮肤刺激可部分解除突触前抑制的作用。在腕伸展过程中,Gp I屈肌传入纤维产生双突触兴奋性输入,特异性作用于高阈值运动单位,同时还产生双突触抑制性输入,根据大小原则分布于腕伸肌运动核之间。在手部紧握期间,其有效性根据运动单位类型受到不同调节。